Battery Management ICs
A Battery Management IC is a specialized microcontroller that monitors and manages the charging and discharging of a lithium-ion or other type of battery. These ICs are essential for ensuring the safe and efficient operation of batteries in a wide range of applications, including portable electronics, electric vehicles, and renewable energy systems. One of the key functions of a Battery Management IC is to optimize the charging and discharging of a battery by controlling the flow of current. This can help to extend the life of the battery and improve its overall performance. In addition to controlling the charging and discharging of a battery, a Battery Management IC can also perform other functions such as monitoring the temperature and voltage of the battery, protecting the battery from overcharge and overdischarge, and providing diagnostic information about the battery's health. Flux.ai has the world's largest community-driven public library of Battery Management ICs, with footprints, symbols, datasheets, and simulation models available for use. Whether you are a designer, engineer, or researcher, the Flux.ai library is an invaluable resource for finding the right Battery Management IC for your project.
SQJ128ELP-T1_GE3
Automotive N-Channel Power MOSFET – 30 V N-channel TrenchFET® Gen IV power MOSFET optimized for automotive power distribution, battery management systems (BMS), motor drives, DC-DC converters, load switching, and high-current embedded power applications. Features a 30 V drain-to-source voltage (VDS), 437 A continuous drain current (TC = 25°C), and ultra-low RDS(on) of 1.16 mΩ maximum at VGS = 10 V (1.66 mΩ maximum at VGS = 4.5 V) for exceptionally low conduction losses. Offers ±20 V gate-to-source voltage, 595 A pulsed drain current, 500 W maximum power dissipation, low gate charge, optimized Qgd/Qgs ratio for fast switching, and an integrated body diode for high-efficiency switching applications. Qualified to AEC-Q101, 100% Rg and UIS tested, and specified for operation over a −55°C to +175°C junction temperature range. Housed in a PowerPAK® SO-8L surface-mount package. #Vishay #SQJ128ELPT1GE3 #SQJ128ELP #NChannelMOSFET #TrenchFET #PowerMOSFET #DCDCConverter #BatteryManagement #MotorDrive #AutomotiveElectronics #PowerPAKSO8L #EmbeddedSystems
42 Uses0 StarsTCAN1462VDRQ1
Automotive CAN FD Transceiver – High-speed CAN FD transceiver compliant with ISO 11898-2:2016 for automotive ECUs, body electronics, industrial automation, motor control, battery management systems (BMS), and embedded communication networks. Supports Classical CAN and CAN FD communication with data rates up to 8 Mbps, operating from a 4.5 V to 5.5 V supply. Features standby mode with ultra-low power consumption, ±58 V bus fault protection, TXD dominant timeout, thermal shutdown, undervoltage protection, 100 mV receiver hysteresis, and failsafe operation for robust and reliable CAN communication. Qualified to AEC-Q100 Grade 1, it operates over a −40°C to +125°C junction temperature range and is housed in a standard 8-pin SOIC package. Unlike the TCAN1462VDRBRQ1, this version does not include Signal Improvement Capability (SIC), making it suitable for conventional CAN/CAN FD networks. #TexasInstruments #TCAN1462VDRQ1 #TCAN1462Q1 #CANFD #CANTransceiver #AutomotiveElectronics #IndustrialCommunication #BatteryManagement #AECQ100 #SOIC8 #EmbeddedSystems
28 Uses0 StarsETA1061V50S2G
1uA Ultra low lq, 0.8V Startup, 1A Synchronous Boost ETA1061, ETA Solutions ETA1061, Synchronous Boost Converter, Ultra Low IQ Boost Converter, 1uA Quiescent Current Converter, 0.8V Startup Converter, DC DC Step Up Converter, Low Power Boost Regulator, Battery Powered Converter, Energy Harvesting Power Supply, IoT Power Management IC, Wearable Electronics Power IC, Power Bank Converter, 5V Boost Converter, High Efficiency Boost Converter, SOT23-6 Boost Converter, DFN2x2 Boost Converter, Portable Electronics Power Supply, Ultra Low Power DC DC Converter, Reverse Current Protection Converter Hashtags: #ETA1061 #ETASolutions #BoostConverter #DCDCConverter #PowerManagement #LowPowerDesign #UltraLowPower #EnergyHarvesting #BatteryPowered #IoTDevices #WearableElectronics #PowerBank #EmbeddedSystems #PowerElectronics #ElectronicsDesign #PCBDesign #HardwareEngineering #PortableElectronics #VoltageRegulator #BatteryManagement
0 Uses0 StarsSQ4435EY-T1_GE3
P-Channel 30V 15A (Tc) 6.8W (Tc) Surface Mount 8-SOIC The SQ4435EY-T1_GE3 is an automotive-grade P-Channel enhancement-mode TrenchFET® power MOSFET from Vishay Siliconix. It is designed for efficient high-side load switching and power management applications, offering low on-resistance, fast switching performance, and excellent thermal reliability. Qualified to AEC-Q101, this MOSFET is suitable for demanding automotive and industrial environments. It is housed in a compact SO-8 surface-mount package, making it ideal for space-constrained designs. Key Features P-Channel enhancement-mode TrenchFET® MOSFET 30 V drain-to-source voltage (VDS) 15 A continuous drain current (TC = 25°C) Low RDS(on): 18 mΩ max @ VGS = -10 V 31 mΩ max @ VGS = -4.5 V AEC-Q101 qualified for automotive applications Operating junction temperature: -55°C to +175°C Low conduction losses for improved power efficiency Fast switching characteristics 100% Rg and UIS tested RoHS compliant and halogen-free Compact SO-8 surface-mount package Typical Applications Automotive high-side load switches Battery management systems (BMS) DC-DC converters Power distribution switches Motor control circuits Industrial power management Reverse battery protection #Vishay #SQ4435EY #PChannelMOSFET #TrenchFET #PowerMOSFET #Automotive #AECQ101 #HighSideSwitch #PowerManagement #DCDC #BatteryManagement #SO8 #IndustrialElectronics #LowRDSon #SurfaceMount
10 Uses0 StarsSIWG917Y111MGABAR
Bluetooth, WiFi 802.11b/g/n/ax, Bluetooth v5.4 Transceiver Module 2.4GHz Integrated, Chip Surface Mount Silicon Labs SiWG917 module is our lowest power Wi-Fi 6 plus Bluetooth LE 5.4, ideal for ultra-low power IoT wireless devices using Wi-Fi®, Bluetooth, Matter, and IP networking for secure cloud connectivity. It is optimal for developing battery operated devices that need long battery life. SiWG917 module includes an ultra-low power Wi-Fi 6 plus Bluetooth Low Energy (LE) 5.4 wireless CPU subsystem, and an integrated micro-controller (MCU) application subsystem, security, peripherals and power management subsystem all in a single 16 x 21.1 x 2.3 mm package. The wireless subsystem consists of a multi-threaded Network Wireless Processor (NWP) running up to 160 MHz, baseband digital signal processing, analog front end, 2.4 GHz RF transceiver and integrated power amplifier. The application subsystem consists of an ARM® Cortex®-M4 running up to 180 MHz, embedded SRAM, flash, ultra-low power sensor hub, and matrix vector processor. The ARM® Cortex®-M4 is dedicated for peripheral and application-related processing, while the NWP runs the wireless and networking stacks on independent threads, thus providing a fully integrated solution that is ready for a wide range of embedded wireless IoT applications. The modules come with modular radio type approvals for various countries, including USA (FCC), Canada (IC/ISED) and Japan (MIC), and are in compliance with the relevant EN standards (including EN 300 328 v2.2.2) for the conformity with the directives and regulations in EU and UK. KEY FEATURES • Wi-Fi 6 Single Band 2.4 GHz 20 MHz 1x1 stream IEEE 802.11 b/g/n/ax • Bluetooth LE 5.4 • Single chip Matter Over Wi-Fi Solution • ARM® Cortex® M4 Processor with FPU subsystem up to 180 MHz with rich set of Digital and Analog Peripherals. • Wi-Fi 6 Benefits: TWT for improved efficiency and longer battery life, MUMIMO/OFDMA for Higher Throughput, network capacity and low latency • Best in Class Device and Wireless Security • WLAN Tx power up to +17.5 dBm with integrated PA • Bluetooth LE Tx power up to +17 dBm with integrated PA • WLAN Rx sensitivity as low as -95.5 dBm • Wi-Fi 4 Standby Associated mode current: 71 μA @ 1-second listen interval • Embedded Flash option up to 8 MB/ optional external Flash up to 16 MB • Embedded PSRAM option up to 2 MB/ optional external PSRAM option up to 16 MB • Ultra-low power sensor hub peripherals • Matrix Vector Processor (MVP) • Embedded Wi-Fi, Bluetooth LE, Matter, and networking stacks supporting wireless coexistence • Three software-configurable MCU application memory options for sharing the RAM between the wireless, system, and application (192/256/320 KB) • Operating temperature: -40 to +85 ºC • Operating supply range: 3.0 to 3.63 V • Supply voltage for GPIOs: 1.71 to 3.63 V #WiFi6 #BluetoothLE54 #IoTModule #WirelessSoC #SiliconLabs #EmbeddedSystems #SmartHome #IndustrialIoT #LowPowerDesign #RFModule #ConnectedDevices #EdgeComputing #MatterReady #PCBDesign #ElectronicsEngineering
780 Uses0 Stars